Self-assembled semiconductor quantum dots show great potential as efficient semiconductor-based non-classical light sources. However, due to the very nature of the self-assembled growth process, the characteristics of individual dots can vary widely and their spatial location is generally uncontrolled. Using a directed self-assembly process, the nucleation site of single quantum dots are designed through lithography. The site-control is used to facilitate the spatial alignment of single quantum dots to high finesse optical microcavities. The single dot-cavity device is a unique system to study the dot-cavity coupling where the presence of background emitters can be unambiguously ruled out. \ua9 2011 IEEE.Peer reviewed: YesNRC publication: Y...
The efficient generation of polarized single or entangled photons is a crucial requirement for the i...
Single and entangled photon sources are fundamental building blocks of future light-based quantum te...
Current quantum cryptography systems are limited by the attenuated coherent pulses they use as light...
The ability to control the nucleation site of a single quantum dot will have a profound effect on th...
The possibility of tailoring the photonic modes of semiconductor emitters placed in a cavity by smar...
Significant advances have been made in the past five years in realizing photon sources based on vari...
Comunicación presentada en el 3rd international Workshop Engineering of quantum emitter properties, ...
The first solid state structures for cavity quantum electrodynamic studies were realized analog to e...
Efficient sources of indistinguishable single photons are a key resource for various applications in...
A single photon source is an essential element for the photonic quantum information applications inc...
AbstractAn atomic-force microscope assisted technique is developed to control the position and size ...
We show that single InAs quantum dots embedded in a planar cavity, formed by mismatched sets of GaAs...
We demonstrate the emission and routing of single photons along a semiconductor chip originating fro...
Trabajo presentado en el 10th International Workshop on Epitaxial Semiconductors on Patterned Substr...
Recently, the emission of single photons with emission wavelength in the 1.3 ??m telecommunication w...
The efficient generation of polarized single or entangled photons is a crucial requirement for the i...
Single and entangled photon sources are fundamental building blocks of future light-based quantum te...
Current quantum cryptography systems are limited by the attenuated coherent pulses they use as light...
The ability to control the nucleation site of a single quantum dot will have a profound effect on th...
The possibility of tailoring the photonic modes of semiconductor emitters placed in a cavity by smar...
Significant advances have been made in the past five years in realizing photon sources based on vari...
Comunicación presentada en el 3rd international Workshop Engineering of quantum emitter properties, ...
The first solid state structures for cavity quantum electrodynamic studies were realized analog to e...
Efficient sources of indistinguishable single photons are a key resource for various applications in...
A single photon source is an essential element for the photonic quantum information applications inc...
AbstractAn atomic-force microscope assisted technique is developed to control the position and size ...
We show that single InAs quantum dots embedded in a planar cavity, formed by mismatched sets of GaAs...
We demonstrate the emission and routing of single photons along a semiconductor chip originating fro...
Trabajo presentado en el 10th International Workshop on Epitaxial Semiconductors on Patterned Substr...
Recently, the emission of single photons with emission wavelength in the 1.3 ??m telecommunication w...
The efficient generation of polarized single or entangled photons is a crucial requirement for the i...
Single and entangled photon sources are fundamental building blocks of future light-based quantum te...
Current quantum cryptography systems are limited by the attenuated coherent pulses they use as light...